Showing posts with label Fadeev-Popov-Traces. Show all posts
Showing posts with label Fadeev-Popov-Traces. Show all posts

Monday, September 23, 2013

Where One Is From

The basis of substringular-based spaces is the existence of orbifolds. Orbifolds relate to the concept of M-Theory. Orbifolds are physical spaces that are comprised of one or more superstrings that operate to perform a specific function. Certain orbifolds that are adjacent -- in certain given arbitrary cases -- are from different universes, while, certain orbifolds that are adjacent - in certain other arbitrary cases -- are from the same universe. The wobble of the directly corresponding Fadeev-Popov-Trace eigenstate that correlates to one superstring -- relative to such a wobble of another Fadeev-Popov-Trace eigenstate that corresponds to another superstring, works to define whether such a case of two superstrings involves physical spaces that are either from two different universes, or, if the two eluded to physical spaces are from the same universe. The wobble of two different superstrings during a dual-based conimetrical center of a Polyakov Action eigenstate works to define which layer of reality both superstrings are in -- relative to one another. Please read my writings about both orbifolds, parallel universes, Gaussian formats, and layers of reality on my blog samsphysicsworld@blogspot.com. Sam Roach.

Tuesday, February 26, 2013

Course 11 About Orbifolds, Session 12, Part One

Orbifolds of one given arbitrary universe differentiate relative to each other -- both as set manifolds that exist over that mapping that may be extrapolated over a Laplacian Transformation -- as welll as over time.  Orbifolds that appertain to different individual universes relative to one another differentiate relative to the other respective orbifolds that are of their own given arbitrary universes in more of a kinematically influential manner than the degree in which the said orbifolds that are of different universes differentiate with orbifolds that are of the same universe  -- when this is taken over any given arbitrary Fourier Transformation that here involves a covariance of the individual eluded to orbifolds that are of the same universe when taken relative to one another.  Orbifolds of the same universe tend to kinematically differentiate with each other in at least some sort of a direct manner over the course of an individual given arbitrary iteration of Ultimon Flow.  For instance, when the multi-dimensional structures that work to comprise the physical membranes of specific orbifolds interact in a direct manner, then, such physical spaces -- that operate according to a specific given arbitrary function -- that are here described as orbifolds, are said to be directly involved with each other in at least some sort of an abelian manner over those group instantons in which orbifolds are kinematically functional over the Fourier Transformation in which the mentioned orbifolds are covariantly interacting in some sort of codifferntiable codeterminable manner.  Orbifolds that are of different universes that interact over the course of a given arbitray Fourier Transformation do not bear Gliossi interactions that are Poincaire upon the topology of the superstrings that work to comprise the said orbifolds.  Such a tendancy that is of a high expectation value is due to the different genus-formats of the norm-conditions of their respective Fadeev-Popov-Traces, the differences in such norm-conditions of which work to differentiate any of such given arbitrary orbifolds as belonging to different universes over the course of the associated sub-Fourier conditions, which is during those individual iterations of group instantons in which these orbifolds interact in a less direct manner over the integration of the said instantons that forms a successive series of relatively motionless frameworks that works to form the flow of energy that happens over time.  These conditions of differences in norm-based conditions appertains to the general field networking that happens under both the general Laplacian conditions of group instanton, as well as over the integration of the successive series of such delineatory states that works to form the kinematic flow of energy through time.  I will continue with the second part of this session later!  Sincerely, Samuel David Roach.

Tuesday, October 16, 2012

An Idea About Force, Presented A Different Way

Force may be viewed of as the kinematic effect of the multiplicit directoralized combination of the abelian/non-abelian/partially abelian-based import of the motion of the integration of the respective individual Chi-based structures of the corresponding Fadeev-Popov-Traces -- in respect to their corresponding superstrings of discrete energy permittivity, in such a manner that the vibration of the corresponding mini-traces works to relate superstrings to the corresponding universes that these belong to.  This is, to where, the sequential series of the discrete energy impedance indices that are related to the said Traces, here, work to integrate in such a manner in so as to allow for a field trajectory of the corresponding discrete energy permittivity that exists in the relatively holomorphic direction relative to the said Traces.  This happens in such a manner, via the springing action of the Imaginary Exchange of Real Reimmanian Residue that occurs during BRST, this of which works to indirectly cause the Njenhuis part of Ultimon Flow, so that energy may be able to oscillate enough to remain as energy, period.

Friday, October 12, 2012

A Tad Bit More Clarification Of Course 5

From where I left from last time, superstrings are "reformed" through the reiterations that work to define the integration of the frets of those Laplacian conditions that form the distributions and the resultant Fourier generation of those redlineations of where superstrings go from one Laplacian-based locus to another.  Such reformations are distributed at opposite Overall-Popov-Ghost-Trace Chi-related ends ends, and, the corresponding point particles that are here directly related are formed along the central Overall-Popov-Ghost-Trace figure-eight-structured entity.  There is a residue of mini-string, and, mini-string are strands of interconnected second-ordered point particles that act as the waves that form both the condensed oscillation that forms first-ordered point particles, the waves that interbind superstrings, and also, the fields that work to inter-relate substringular phenomena.  The mentioned residue of mini-string is brought from the Royal Arc to work toward the operation of Grassman relationship that exists in-between the corresponding superstrings of discrete energy permittivity and their counterparts.  The mentioned mini-string segments are interconnected with the corresponding substrates of the Bases of Light that fold in an effort to form the mini-traces that work to allow for the relationship that exists in-between the multiplicit operators of superstrings of discrete energy permittivity and their corresponding Fadeev-Popov-Ghost-Traces.  The superstrings -- that are indistinguishably different due to the related recycling of their condensed oscillation -- work to tie up in an effort to complete their pertinant topological consistancy, and, this is the result of an altered inclination toward a perturbation of what codifferentiates most directly with what over a successive Fourier Transformation.  The untying that I elluded to is performed during the instanton-quaternionic-field-impulse -- that happens right before instanton.  This happens that way because of the initial void that attempts to happen when superstrings are in relatively such a state of relaxation from the prior impulse mode until the end of the Regge Action.  As the countering of the holonomic Laplacian condition of the counterparts of Real Reimmanian spaces virtually attempts to unfurl the fractal of pressurized vacuum that works to interbind third-ordered point particles, the surrounding reverberatorial pressure works to retie the virtually attempted said "unfurling."  The nodes that exist due to such a reverberatorial pressure work to pull the mini-string that exists during the elluded to sub-Fourier activity, causing the impulse mode that I reffered to -- that moves phenomena indirectly into the condition of the next succeeding duration of instanton. Sincerely, Sam.  The suspense will soon be answered.

Thursday, August 23, 2012

More As to the Importance of gauge-transformations

Gauge-Transformations are the most common form of Gaussian Transformations.
Gauge-Transformations are Gaussian Transformations that cause a perturbation or altering of the type of light-cone-gauge topology any said given arbitrary superstrings are to have.
Gaussian Transformations not only work to free up room for the kinematic redistribution of superstrings in the process of allowing for an alteration in the holonomic pretext of any given locus of Ward Caucy-based norm-conditions, yet, the process of Gaussian Transformations also simultaneously allow for the reattaining of discrete energy permittivity in the corresponding superstrings so that these said superstrings may remain as discrete energy so that energy may exist period.
Over the course of the same prior mentioned general basis of metric, the corresponding Kaeler-Metric eigenstates also allow for the reattaining of discrete energy impedance from within the holonomic structure of those Fadeev-Popov-Traces so that the condition of discrete energy permittivity may have a relatively reverse-holomorphic field trajectory of discrete energy impedance.  Wherever there is energy permittivity, there is also energy impedance.  Both are necessary for the existance of energy, period.
Gauge-Transformations, in the process of allowing for changes in local norm-conditions, allowing for changes in light-cone-gauge topology, and also allowing for the maintainance of discrete energy permittivity and discrete energy impedance, also allow for both the interaction of light with other phenomena, as well as allowing for the necessity of essential entropy.  The directly prior taken multiplicitly thence indirectly allows for the relativity of light with other phenemena so that there may be the needed inextricable binding of phenomena with the existence and with the kinematic differentiation of light.
I will continue with the suspence later!  Sincerely, Sam Roach.

Wednesday, August 1, 2012

An Idea About Force

Here is an idea that may tend to describe a force at the most viable micro level:
The kinematic effect of the directoralized motion of the integration of the vibrational indices of the respective individual Chi-based structures of Fadeev-Popov-Traces, to where, the resulting sequential series of the discrete energy impedance indices that the motion of the said Fadeev-Popov-Traces form, integrate to allow for a field trajectory of discrete energy permittivity so that energy may be able to oscillate enough to remain as energy -- period.
Every phenomenon that exists as an entity that is directly observable -- whether in motion or in a standstill -- is comprised of superstrings that are kinematic in a manner that is anywhere from in a state of superconformal invariance, in a state of merely conformal invariance, in a state of being semi-spuriously displaced, in a state of an alterior-based delineatory perturbation, in a state of electromotive pulse, and/or, in a state of tachyonic flow over the course of a sequential series of instantons.
All of the prior mentioned conditions invove angular momentum -- since all physical phenomenea is energy.  Mass is energy in static equilibrium.  So, all tangency of pressure and/or pulse involves an effect of interactive angular momentum -- whether such an action of relatively macro-wave-tug is globally mobile or stationary.  So, all pressure and/or pulse involves a directoralized interaction that may be either multiplicitly codifferentiated, multilateral, entropically delineated, or, in some cases, unitarily delineated upon the motion of a reverse-fractal-based Gliossi tangency that allows the pulse of the tug of one relatively macro-based phenomenon upon another.  
Sincerely, Samuel David Roach. 

Thursday, June 21, 2012

Session 15 Of Course 10

Tadpoles happen when three-dimensional fields of two-dimensional superstrings are made entopically spurious after basically countless iterations.  Such spuriousness is increased when two-dimensional superstrings have iterated through a common general path via a tense of conformal invariance too many times with no condition of being used to vanquish the chaotic energy-like condition of the resulting entropy.  This is because the space-hole works to realign the path operand of the individual world-sheets of both the associated one and two-dimensional superstrings in such a manner to where an increase in the entropy that is due to such an attempted realignment may happen. This happens when various substringular systems are relatively isolated to where these systems need to be changed in terms of the light-cone-gauge eigenstates that appertain to the resulting entropy and/or in terms of the Chern-Simmons condition of the same set of arbitrary superstrings that comprise the given prior mentioned entropy.  World-Sheets of substringular phenomena may be spatially effected in terms of large groups of these by thought energy in so that the paths of the related one and two-dimensional superstrings may have enough of an interaction with other one and two-dimensional superstrings.  This means that certain forms of thought energy -- in a manner that I will not here describe -- may be used to help in the effert to assist in the process of those forms of substringular delineations that may work to maintain that homotopy that works to sustain the condition of Cassimer Invariance so that our continued existence may be prolonged and secured.  This may happen in such a manner so that the paths of the corresponding given arbitrary superstrings may have enough of an interaction with other one and two-dimensional superstringular paths so as to allow life to differentiate in a time-wise manner with more freedom of motion -- as well as to allow for enough substringular room so that Gaussian Transformations may be aptly able to happen in the process of allowing both changes in norm-conditions as well as to allow for the reattaining of that discrete permittivity and discrete impedance that is necessary so that superstrings and their corresponding Fadeev-Popov-Traces may continue to exist so that there will be continued energy and freedom of energy redistribution.  This freeing up of room is so that those activities may happen so that there may be not only energy, yet also so that energy may be smooth enough in its kinetic delineations and redelineations in order for homotopy to persist with no danger.  This is necessary in order for space-time to adapt so that space-time-fabric may be able to homotopically persist.  I will continue in the direction of the 16th and last session of this course later.  I will converse then!  Sincerely, Samuel David Roach.

Monday, April 2, 2012

About The Cohomologies During The Kaeler-Metric

When the Wick Action -- which is an arbitrary example of a Hausendorf Projection -- moves upon the Landau-Gisner Action, the subtended angling that a corelative Wick Action eigenstate bears upon its corresponding Landau-Gisner Action eigenstate when extrapolating it in the relative reverse- holomorphic general direction is 22.5 degrees in all of the local dimensions that may be described by the related Ward Neumman conditions from a Wilson Line that one would here map linearly horizontal from the norm-to-forward-holomorphic end of the respective Landau-Gisner Action eigenstate.  The Landau-Gisner Action is an arbitrary example of a Campbell/Hausendorf Projection.  As a Wick Action eigenstate acts upon a Landau-Gisner Action eigenstate to begin the process of a Kaeler-Metric eigenduration, the first-ordered point particles that comprise both norm-projection eigenstates that are here respectively mentioned are relatively uncompactified when in comparison to the first-ordered point particles that comprise superstrings during BRST.  The holonomic substringular topological "substance" that comprises the first-ordered point particles of both a Wick Action eigenstate and a Landau-Gisner eigenstate meshes torsion-wise to form a genus of cohomology.  This is so as to allow for the appropriate Gliossi interaction that allows the related Wick Action eigenstate and its corresponding Landau-Gisner Action eigenstate to directly interact so as to provide the proper type of leveraging of the Fischler-Suskind-Mechanism eigenstate that is here involved.  This is so that the related Klein Bottle eigenstate may be moved via the respective Higgs Action eigenstate.  Just as the related Wick Action eigenstate meshes at one end with the respective Landau-Gisner eigenstate here, the reverse-norm-to-forward-holomorphic end of the Landau-Gisner Action acts upon the Fischler-Suskind-Mechanism to form an overall cohomology that begins Rham while then becoming Doubolt at the reverse-norm-to-forward-holomorphic end of the relative Real Reimmanian Plane that is involved in this given arbitrary case.  The relative pulse of the Real Reimmanian Plane at the described "bottom" of the associated Plane causes the change in the Laplacian Ward Neumman topological norm conditions that causes the cohomological structure that is locally mapped here to convert from Rham to Doubolt at the singularity that may be described by where the associated Fischler-Suskind-Mechanism eigenstate initially reaches the said "bottom" of the related Real Reimmanian Plane eigencondition.  After an equal Laplacian-Based mapping delineation in the initial change of the norm-conditions of the Ward Neumman distribution of the respective Fischler-Suskind-Mechanism eigenstate, the associated Doubolt cohomological tracing of the said mechanism's eigenstate changes in displacement from going in the relative reverse-holomorphic direction to being displaced in the relative norm-to-forward-holomorphic direction.  As kinematic pressure is applied to the related Wick Action eigenstate as we begin here to describe how the Kaeler-Metric eigenduration happens here through time, the Landau-Gisner Action eigenstate here is pulled in the relative norm-to-reverse-holomorphic direction so as -- via the described Doubolt-related changes in norm translation -- to move the related Higgs Action eigenstate that is described here so as to move the related Klein Bottle eigenstate in the relative norm-to-forward-holomorphic direction so that the respective Klein Bottle eigenstate may move in the direction as to where the Kaeler-Metric is to kinematically interact with superstrings so that :  1)  The associated superstrings may reattain permittivity; 2)  The corresponding Fadeev-Popov-Traces may reattain impedance;  & 3)  Also so that, during gauge-transformations, the appropriate entropy may occur so that light may scatter in such a manner so that the related photons may not only requantize, yet, also so that there may be enough necessary chaos so that there may be changes in physical state.  I have more to discuss on this point, yet, my time is limited.  I will continue with the suspence later!  Sincerely, Sam Roach.      

Monday, March 19, 2012

A Little As To The Relationship Between Gauge Transformations and the Bette Action

When gauge transformations happen, the Bette Action happens in such a way to where the corresponding superstrings that are here directly related have less of a tendancy to be orientable.  Superstrings that are not only unorientable in the Bette Action, yet, are also unorientable in the Regge Action, become tachyonic until the corelative superstrings that are arbitrarily mentioned here are acted upon to return back to a tense of Noether Flow.  Again, the reason as to why the Bette Action tends to bear a condition of unorientable corresponding superstrings is because of the related shaking of the respective Klein Bottle eigenstates that happens as the superstrings that are consequently within the Neumann region of the said Klein Bottle eigenstate during the respective Kaeler-Metric eigenmetric are also shook by the interaction of the mentioned superstrings that enter the given Klein Bottle eigenstate with the norm-states that exist within the Neumman Ward bounds of the said open-topped parallelopiped entity that helps to physically describe the shape of the said Klein Bottle eigenstate. 
The main functions of the Kaeler-Metric is to both allow for superstrings to regain the discrete metric-gauge that these need to remain as discrete energy permittivity while yet also to allow for their reverse-holomorphically delineated Fadeev-Popov-Trace eigenstates to regain discrete field trajectory metric-gauge so that these may remain as discrete energy impedance.  Metric-Gague in superstrings and also metric-gauge in Fadeev-Popov-Traces is holonomically the topological sway eigenstates that provide the basis of angular momentum relationship that causes the said substringular phenomena to be able to be delineated thru the substrate of space-time-fabric so that the mentioned substringular phenomena may be sufficient enough to move thru the operand of that space so that energy may continue spontaneously.  When both the substringular phenomena that enters the given Klein Bottle eigenstates shakes as well as the holonomic substance of the said Klein Bottle eigenstates shakes as well at the same time, the specific loci where the metric-gauge that produces the proper covariant relationship so that the corresponding substringular phenomena may continue to move thru space spontaneously is pulled and swayed into a slightly broader locus that works to alter the hermitian characteristic of the topological substance of the said substringular phenomena enough so as to alter the homeomorphic Ward conditions of the mini-string that binds the related superstrings to their counterstrings and/or works to alter the relative given arbitrary length of the individual strands of the mini-string that bind between the respective superstrings and their respective counterstrings.  This is simply due to the condition that alterior topological sways that are compounded upon an initial topological sway form a multilateral spin-orbital delineation acts upon a larger Hodge-Basis of a Ward Minkowski surface area.  This is why gauge transformations produce an initial but extremely brief tachyonic conditon in photons that subsequently slows these photons even more than these said photons were directly previously sped up -- according to Snell's Law -- so that the respective photons may "catch-up" to their related orbifolds that these are to quantize with so the said photons that are scattered will always average having a slower velocity than if these were to travel in a vacuum.  If a set of superstrings undergoing a gauge transformation tends to be unorientable in the Regge Action, then, there will be more tachyonic motion in other superstrings that will here arbitrarily convert from Kaluza-Klein to Yang-Mills.     

Saturday, November 7, 2009

More About Kaeler Differentiation

A Klein Bottle differentiates kinematically through a minimal flow of 384 iterations in one discrete set of superconformal invariance. Such a flow of iterations, to partake of a Fourier sequential series that is integrative via the holonomic substrate of the physical components that comprise the phenomena and gauge-actions that cause superstrings to regain permittivity and that cause Fadeev-Popov-Traces to regain impedance, must exist in at least a set of 768 or more iterations as is divisible by 384 iterations. Every time a Klein Bottle undergoes over 768 consecutively, yet divisible by 384 iterations, the Klein Bottle undergoes a "spin" differentiation that is kinematic aafter the 768th consecutive iteration. Such a "spin" is a redistribution of the coniaxial of the "three dimensional" Ward parameterization of the Schotky Construction of the associated Klein Bottle. The degree and manner of the associated redistribution is based on the directoralization and differentially geometric Ward holomorphisms of the associated Wick Actions that are pertinent to the scenario at hand in this given case of the Klein Bottle. The whole holonomic conipoint locus of the given Klein Bottle may be perturbated from the "last" locus of where the Klein Bottle is to be after one superconformally invariant set of iterations of the Kaeler metric. The more entropic the Yau-Exact Kaluza-Klein light-cone-gauge eigenstates that are involved withe the kinematic differentiation of a given Klein Bottle is, the more perturbative the redistribution of the positioning of the Klein Bottle is, relative to where it was before. Such a redistribution or "spin" of the Klein Bottle is an alteration of a tense of superconformal invariance that, if acting in a repeated group-metric that exists in a relatively Fourier Series integration (in terms of a convergent sequential series) may be existent in a broader tense if conformal invariance. This is when the net coniaxial and conipoint redistribution of the Klein Bottle has a net locus differentiation spatially as zero (0). This is due to the conformal invariance of the Hamiltonian convergence of the kinematic invariance of the associated E(8)xE(8) heterotic bosons that interconnect orbifolds and orbifold eigensets. This happens when the associated Wick Actions appertaining to the given Klein Bottle are scattered out of, then back, into a supplementally norm tense of orphoganation in that the norm Ward conditions of an orbifold or orbifold eigenset, which are in a Gaussian flow, are scattered, but then rescattered back, into a Gaussian tense of normalization that convergently repeat a Calabi-Cevita interaction that is brought back to order by an associated Wess-Zumino interaction due to the renormalizing factor of Njenhuis Hausendorf and Campbell projections that influence the codifferentiation and hermitian vibrations of the Gaussian flow of the relatively local Caucy Ward conditions. This happens when you have Calabi interactions that are inversely converged back by Reverse Calabi interactions. Such reverse Calabi interactions are an example of Anti-Cevita interactions.

Saturday, October 3, 2009

GUFT, Another Addition

The Klein bottle exists for the purpose of Kaeler metrics. The Kaeler metric is the gauga-metric sequential series that allows for superstrings to shake back and forth thru a series of 191 iterations or instantons eight timers per iteration so that a set of superstrings per Klein bottle per utilization may regain the permittivity that these need so that these associated superstrings may be the energy that these are to be. Superstrings are the permittivity of discrete units of basic Planck energy. The Kaeler metric also causes the field trajectory of superstrings which are known as Fadeev-Popov-Traces to reatain the impedance that these need so that these may secure the energy of the superstrings so that discrete energy may not form an imaginary supercharge that would destroy everything. So, the Fadeev-Popov-Traces act as the impedance of discrete units of energy. The Klein bottle is lifted toward the locus of where the Kaeler metric is to happen via a particle known as a Higgs Action.The Higgs Action is moved via an operation (Fourier) known as a Fischler-Suskind mechanism. The Fischler-Suskind mechanism is a leverage operation that increments the Higgs Action one Planck Length at a time via a gauge-action known as a Landau-Gisner Action. The Landau-Gisner Action is triggered by a Hausendorf Projection known as a Wick Action. The Wick Action is formed by the alteration or perturbation in the norm conditions (Ward normal) of the superstrings and the norm Ward conditions of the orbifolds and the norm Ward conditions of the torroidal cohomologies of the superstrings of the orbifolds of an orbifold eigenset that cause a substringular profection per associated Klein bottle locus that appertains to the need for a Gaussian Transformation. The Klein bottle is built in a fashion known as a Schotky Construction. A Schotky Coonstruction is comprised as follows: It has five sides with no relative "top" in the form of a half-cube that is empty of superstrings and has no cap. It has sides that are the thickness of the Planck Length with norm states inside of it that are Campbell indices that here are negative norm statess. The four sides that arae parallel are known as orientifolds. The Schotky Construction of the Klein bottle'ss norm indices and angled at 22.5 degrees from each other subtended back-and-forth from layer of states to layer of states. This low pressure in the Klein bottle gives it a low substringular pressure that makes it have a norm to reverse/norm to forward holomorphic pull that is based on the Minkowski Hodge Index of one of its walls. The overall push on the Klein bottle thus allows it to be moved "upward" by the forces acting thru the Higgs Action via the Higgs Action. (A volume of third-ordered-point-particles with a leverage that has a backing has a greater Hodge Index than a relatively small Minkowski surface.) The Klein bottle or Schotky Construction rock-sways at 45 degrees 3-D subtended lengthwise by 22.5 degrees subtended widthwise per iteration as it reaches the plane where the superstrings are to enter it. (22.5 degrees subtended from the bottom of the Higgs Action holomorphically, then antiholomorphically.) The Higgs Action angles as described before for side motion of the Klein bottle. The superstrings then receive the Kaeler metric once per iteration for 191 straight iterations.

Wednesday, September 23, 2009

Addendum 1 to GUFT

The Klein Bottle has an exterior surface area of 768 Planck lengths by 384 Planck lengths. The Klein bottle allows for a group metric of 191 iterations that produce 191 mini-loops to be acquired by each superstring that undergoes the Fourier translation of the set of Kaeler metrics that allows superstrings to attain the permittivity that thee need and to allow their respective Fadeev-Popov-Traces, or, in other words, their Planck phenomenon related phenomena, to attain the impedance that these need to be the discrete units of energy that these are. 768*38*191 = 56,328,192. So, in general, each time that a superstring undergoes 56,328,192 iterations along the ultion whether tachyonic or not since either way these go thru the ultimon or go around the Overall Physical Portion of the space-time-continuum per iteration, the associated discrete units of energy, 56,328,192 iterations after their respective Kaeler metrics, go thru the Klein metric again. The kinematic redifferentiation of superstrings via their Lagrangians through their respective Fourier Transformations allow for redistribution of correlative superstrings and their respective Fadeev-Popov-Traces to allow Minkowski-Wise indistinguishablly different stringular groups that are Hilbert-Wise and Njenhuis-Wise indistinguishablly different stringular groups, seeing that group Ward substringular groups alter in group angle codifferentiation during each successie set of superconformal transposition. When Minkowski-Wise kinematism becomes multiplicit, then the stringular groups associated with the altering Kaeler metrics then become distinguishablly different. This happens when Clifford differentiation becomes Real Reimmanian relative to the associated substrigular fields.